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Updated: Dec 9, 2025

Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
The Origin and Immune Recognition of Tumor-Specific Antigens
Anca Apavaloaei1, Marie-Pierre Hardy1, Pierre Thibault1
1Institute for Research in Immunology and Cancer, Université de Montréal, Montréal, QC H3T 1J4, Canada.
Abstract:
The dominant paradigm holds that spontaneous and therapeutically induced anti-tumor responses are mediated mainly by CD8 T cells and directed against tumor-specific antigens (TSAs). The presence of specific TSAs on cancer cells can only be proven by mass spectrometry analyses. Bioinformatic predictions and reverse immunology studies cannot provide this type of conclusive evidence. Most TSAs are coded by unmutated non-canonical transcripts that arise from cancer-specific epigenetic and splicing aberrations. When searching for TSAs, it is therefore important to perform mass spectrometry analyses that interrogate not only the canonical reading frame of annotated exome but all reading frames of the entire translatome. The majority of aberrantly expressed TSAs (aeTSAs) derive from unstable short-lived proteins that are good substrates for direct major histocompatibility complex (MHC) I presentation but poor substrates for cross-presentation. This is an important caveat, because cancer cells are poor antigen-presenting cells, and the immune system, therefore, depends on cross-presentation by dendritic cells (DCs) to detect the presence of TSAs. We, therefore, postulate that, in the untreated host, most aeTSAs are undetected by the immune system. We present evidence suggesting that vaccines inducing direct aeTSA presentation by DCs may represent an attractive strategy for cancer treatment.
Insights
Tumor-specific antigens (TSAs) are crucial for anti-tumor immunity but often missed. Mass spectrometry is key to identifying these TSAs, suggesting new vaccine strategies targeting dendritic cells (DCs).
Area of Science:
- Immunology
- Oncology
- Proteomics
Background:
- The prevailing view is that CD8 T cells drive anti-tumor responses against tumor-specific antigens (TSAs).
- Identifying TSAs is critical for understanding and harnessing anti-tumor immunity.
- Current methods like bioinformatics and reverse immunology lack the conclusive power of mass spectrometry.
Purpose of the Study:
- To highlight the limitations of current TSA detection methods.
- To propose mass spectrometry as the definitive tool for TSA identification.
- To suggest novel cancer vaccine strategies based on TSA presentation.
Main Methods:
- Mass spectrometry analysis of the entire translatome, including all reading frames.
- Interrogation of canonical and non-canonical transcripts.
- Evaluation of antigen presentation pathways, including direct and cross-presentation.
Main Results:
- Most TSAs originate from non-canonical transcripts due to cancer-specific aberrations.
- Aberrantly expressed TSAs (aeTSAs) are often short-lived and poorly cross-presented by dendritic cells (DCs).
- Cancer cells are inefficient at presenting TSAs due to poor cross-presentation.
Conclusions:
- Mass spectrometry is essential for comprehensive TSA discovery.
- Many TSAs are likely missed in untreated hosts due to presentation challenges.
- Vaccines designed for direct TSA presentation by DCs offer a promising therapeutic avenue.
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